One key component in the assembly of nanoparticles is their precise positioning to enable the creation of new complex nano-objects. Controlling the nanoscale interactions is crucial for the prediction and understanding of the behaviour of nanoparticles (NPs) during their assembly. In the present work, we have manipulated bare and functionalized gold nanoparticles on flat and patterned silicon and silicon coated substrates with dynamic atomic force microscopy (AFM). Under ambient conditions, the particles adhere to silicon until a critical drive amplitude is reached by oscillations of the probing tip. Beyond that threshold, the particles start to follow different directions, depending on their geometry, size and adhesion to the substrate. Hi...
Nanofabrication techniques have always been at the heart of realising novel functional nanodevices. ...
The atomic force microscope (AFM) has been used to measure surface forces between silicon nitride AF...
Two-dimensional assemblies of colloidal gold nanoparticles were deposited via electrostatic self-ass...
One key component in the assembly of nanoparticles is their precise positioning to enable the creati...
Adhesion forces between functionalized gold colloidal nanoparticles (Au NPs) and scanning probe micr...
Via dissipation processes in dynamic atomic force microscopy, we have investigate,in controlled ambi...
Adhesion forces between functionalized gold colloidal nanoparticles (Au NPs) and scanning probe micr...
Via dissipation processes in dynamic atomic force microscopy, we have investigate,in controlled ambi...
A quasi-one-dimensional (quasi-1D) Au nanocolloids array has been fabricated on silicon by combining...
Pull-off force measurements were carried out between gold-coated atomic force microscope (AFM) canti...
Mechanical control of nanometer size objects and the dynamic behaviour at thislength scale are subje...
Mechanical control of nanometer size objects and the dynamic behaviour at thislength scale are subje...
This paper provides a convenient method for fabricating highly controlled arrays of gold nanoparticl...
The deposition of charge-stabilized colloidal gold nanocrystals on silicon substrates, derivatized w...
The deposition of charge-stabilized colloidal gold nanocrystals on silicon substrates, derivatized w...
Nanofabrication techniques have always been at the heart of realising novel functional nanodevices. ...
The atomic force microscope (AFM) has been used to measure surface forces between silicon nitride AF...
Two-dimensional assemblies of colloidal gold nanoparticles were deposited via electrostatic self-ass...
One key component in the assembly of nanoparticles is their precise positioning to enable the creati...
Adhesion forces between functionalized gold colloidal nanoparticles (Au NPs) and scanning probe micr...
Via dissipation processes in dynamic atomic force microscopy, we have investigate,in controlled ambi...
Adhesion forces between functionalized gold colloidal nanoparticles (Au NPs) and scanning probe micr...
Via dissipation processes in dynamic atomic force microscopy, we have investigate,in controlled ambi...
A quasi-one-dimensional (quasi-1D) Au nanocolloids array has been fabricated on silicon by combining...
Pull-off force measurements were carried out between gold-coated atomic force microscope (AFM) canti...
Mechanical control of nanometer size objects and the dynamic behaviour at thislength scale are subje...
Mechanical control of nanometer size objects and the dynamic behaviour at thislength scale are subje...
This paper provides a convenient method for fabricating highly controlled arrays of gold nanoparticl...
The deposition of charge-stabilized colloidal gold nanocrystals on silicon substrates, derivatized w...
The deposition of charge-stabilized colloidal gold nanocrystals on silicon substrates, derivatized w...
Nanofabrication techniques have always been at the heart of realising novel functional nanodevices. ...
The atomic force microscope (AFM) has been used to measure surface forces between silicon nitride AF...
Two-dimensional assemblies of colloidal gold nanoparticles were deposited via electrostatic self-ass...